Liu Qi, Zheng Lamei, Wang Yan, Zhou Yijun, Gao Fei
Laboratory of Mass Spectrometry Imaging and Metabolomics (Minzu University of China), National Ethnic Affairs Commission, Beijing 100081, China; Key Laboratory of Ecology and Environment in Minority Areas (Minzu University of China), National Ethnic Affairs Commission, Beijing 100081, China; College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China.
Laboratory of Mass Spectrometry Imaging and Metabolomics (Minzu University of China), National Ethnic Affairs Commission, Beijing 100081, China; Key Laboratory of Ecology and Environment in Minority Areas (Minzu University of China), National Ethnic Affairs Commission, Beijing 100081, China; College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China.
Int J Biol Macromol. 2024 May;266(Pt 1):131020. doi: 10.1016/j.ijbiomac.2024.131020. Epub 2024 Mar 21.
Ammopiptanthus mongolicus, a rare temperate evergreen broadleaf shrub, exhibits remarkable tolerance to low temperature and drought stress in winter. Late embryogenesis abundant (LEA) proteins, a kind of hydrophilic protein with a protective function, play significant roles in enhancing plant tolerance to abiotic stress. In this present study, we analyzed the evolution and expression of LEA genes in A. mongolicus, and investigated the function and regulatory mechanism of dehydrin under abiotic stresses. Evolutionary analysis revealed that 14 AmLEA genes underwent tandem duplication events, and 36 AmLEA genes underwent segmental duplication events Notably, an expansion in SKn-type dehydrins was observed. Expression analysis showed that AmDHN4, a SKn-type dehydrin, was up-regulated in winter and under low temperature and osmotic stresses. Functional analysis showcased that the heterologous expression of the AmDHN4 enhanced the tolerance of yeast and tobacco to low temperature stress. Additionally, the overexpression of AmDHN4 significantly improved the tolerance of transgenic Arabidopsis to low temperature, drought, and osmotic stress. Further investigations identified AmWRKY45, a downstream transcription factor in the jasmonic acid signaling pathway, binding to the AmDHN4 promoter and positively regulating its expression. In summary, these findings contribute to a deeper understanding of the functional and regulatory mechanisms of dehydrin.
蒙古沙冬青是一种稀有的温带常绿阔叶灌木,在冬季对低温和干旱胁迫具有显著的耐受性。晚期胚胎发生丰富(LEA)蛋白是一类具有保护功能的亲水性蛋白,在增强植物对非生物胁迫的耐受性方面发挥着重要作用。在本研究中,我们分析了蒙古沙冬青中LEA基因的进化和表达,并研究了脱水素在非生物胁迫下的功能和调控机制。进化分析表明,14个AmLEA基因经历了串联重复事件,36个AmLEA基因经历了片段重复事件。值得注意的是,观察到SKn型脱水素有所扩增。表达分析表明,SKn型脱水素AmDHN4在冬季以及低温和渗透胁迫下上调。功能分析表明,AmDHN4的异源表达增强了酵母和烟草对低温胁迫的耐受性。此外,AmDHN4的过表达显著提高了转基因拟南芥对低温、干旱和渗透胁迫的耐受性。进一步研究确定,茉莉酸信号通路中的下游转录因子AmWRKY45与AmDHN4启动子结合并正向调控其表达。总之,这些发现有助于更深入地了解脱水素的功能和调控机制。